Research gap
A research opportunity connected to missing evidence, methods, datasets, validation, or translation.
Gap type
Priority
Evidence
Status
Followers
Evidence links
Preparing research brief
The platform is organizing evidence for this page. Linked papers and discussion remain available while the brief is prepared.
The first accepted evidence set for Memristive devices and neuromorphic computing includes 12 papers. Evidence currently spans 2021 to 2024. Methods represented in the accepted evidence include Endurance and retention tests, Review of crossbar architecture, MNIST recognition accuracy simulation. The most specific unresolved gap is unresolved evidence gap around integration technology hurdles. Paper intelligence specifically flags: Integration technology hurdles; Algorithmic and system-level challenges; Sneak-path current impedes practical applications in storage. This gap should be tracked as topic memory, paper intelligence, and future accepted evidence mature.
Current barriers will appear when evidence is linked or reviewed.
Hardware implementation of memristor-based artificial neural networks
Fernando Aguirre; Abu Sebastian; Manuel Le Gallo; Wenhao Song; Tong Wang; J. Joshua Yang; Wei Lü; Meng‐Fan Chang; Daniele Ielmini; Yuchao Yang; Adnan Mehonić; Anthony J. Kenyon; Marco A. Villena; J.B. Roldán; Yuting Wu; Hung-Hsi Hsu; Nagarajan Raghavan; J. Suñé; E. Miranda; Ahmed M. Eltawil; Gianluca Setti; Kamilya Smagulova; K. Saláma; Olga Krestinskaya; Xiaobing Yan; Kah‐Wee Ang; Samarth Jain; Sifan Li; Osamah Alharbi; Sebastián Pazos; Mario Lanza · 2024 · Nature Communications
Linear and symmetric synaptic weight update characteristics by controlling filament geometry in oxide/suboxide HfOx bilayer memristive device for neuromorphic computing
Dwipak Prasad Sahu; Kitae Park; Peter Hayoung Chung; Jimin Han; Tae‐Sik Yoon · 2023 · Scientific Reports
Future work suggestions will appear when the gap has enough evidence.
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Timeline entries will appear as linked evidence accumulates.
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An Interface‐Type Memristive Device for Artificial Synapse and Neuromorphic Computing
Sundar Kunwar; Zachary Jernigan; Zach Hughes; Chase Somodi; Michael Saccone; Francesco Caravelli; Pinku Roy; Di Zhang; Haiyan Wang; Q. X. Jia; Judith L. MacManus‐Driscoll; Garrett T. Kenyon; Andrew Sornborger; Wanyi Nie; Aiping Chen · 2023 · Advanced Intelligent Systems
Existing attempts will appear when papers are linked.
Limitations will be summarized from reviewed evidence when available.